Patent 5366435 Issued on November 22, 1994. Estimated Expiration Date: December 14, 2013. Estimated Expiration Date is calculated based on simple USPTO term provisions. It does not account for terminal disclaimers, term adjustments, failure to pay maintenance fees, or other factors which might affect the term of a patent.
A method of therapeutically treating various virus and genetically based diseases comprises subjecting mammals suffering from said diseases to an alternating magnetic field having flux density and a frequency calculated as a function of the mass of the oncogene, target gene, messenger RNA, protein, enzyme and/or hormone. The calculation is such to equate the energy of a current electromagnetically induced in the mammal with the gravitational energy of the target genetic material, such that a dual resonance is achieved.
Other References
Dixey, R. & Rein, G. (1982) "H-noradrenaline Release Potentiated in a Clonal Nerve Cell Line by Low Intensity Pulsed Magnetic Fields", Nature, 296, 253-256
Cremer-Bartels, G., Krause, K. & Kuechle, J. J. (1983), "Influence of Low Magnetic Field-Strength Variations on the Retina and Pineal Gland of Quails and Humans", Graefe's Archives of Clinical and Experimental Ophthalmology, 220, 248-252
Reuss, S., Semm, P. & Vollrath, L. (1983), "Different Types of Magnetically Sensitive Cells in the Rat Pineal Gland", Neuroscience Letters, 40, 23-26
Welker, H. A., Semm, P., Willig, R. P., Commentz, J. C., Wiltsehko, W. & Vollrath, L. (1983), "Effects of an Artificial Magnetic Field on Serotonin N-acetyltransferase Activity and Melatonin Content of the Rat Pineal Gland", Experimental Brain Research, 50, 426-432
Bliss, V. L. & Heppner, F. H., (1976), "Circadian Activity Rythms Influenced by Near Zero Magnetic Field", Nature, 261, 411-412
DeLorge, J. (1979), Effects of Magnetic Fields on Behavior in Nonhuman Primates, In T. Tenforde (Ed.), "Magnetic Field Effects in Biological Systems", (p. 32), New York: Plenum Press
Adey, W. R. (1981) "Tissue Interactions with Nonionizing Electromagnetic Fields", Physiological Review, 61, 435-514
Sandyk, R. "Magnetic Fields in the Therapy of Parkinsonism", Int'l Jrnl of Neuroscience, 1992, vol. 66, pp. 209-235
Sandyk, R. "Successful Treatment of MS with Magnetic Fields", Int'l Jrnl of Neuroscience, 1992, vol. 66, pp. 237-250
Anninos, P. A. et al, "Mag. Stimulation in the Treatment of Partial Seizures", Int'l Jrnl of Neuroscience, 1991, vol. 60, pp. 141-171
Sandyk, R. "Resolution of Longstanding Symptoms of MS by Application of Picotesla Range Magnetic Fields" Intnl Jrnl Neuroscience, 1993, vol. 70, pp. 255-269
Sandyk, R. "Magnetic Fields Normalize visual Evoked Potentials and Brainstem Auditory Evoked Potentials in MS", Intnl Jrnl Neuroscience, 1993
Sandyk, R. "Successful Treatment of an Acute Axacerbation of MS by External Magnetic Fields", Internal Jrnl of Neuroscience, 199